生活在Columba livia(鸟类:Columbiformes)的早期性腺发育:生殖细胞的迁移、定植和分化。

IF 1.7 4区 生物学 Q4 CELL BIOLOGY Development Growth & Differentiation Pub Date : 2023-10-05 DOI:10.1111/dgd.12895
Gabriela Beatriz Olea, María Victoria Aguirre, Daniel Marcelo Lombardo
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引用次数: 0

摘要

在鸟类中,原始生殖细胞(PGCs)利用血液传播到特定区域,在那里细胞发生外渗,然后在层内迁移到性腺嵴进行进一步定植。目前,DDX4、SSEA1和Oct4用于鉴定生殖细胞。其他种系细胞相关分子是N-钙粘蛋白、GnRHR和3βHSD,它们已在小鼠和鸟类性腺发育过程中使用;然而,它在鸟类早期性腺发育中的作用却很少被描述。本研究旨在评估在PGCs迁移定植过程中,对鹅肝胚胎中N-钙粘蛋白结合分子、Oct4多能蛋白、GnRHR受体和3βHSD酶的差异免疫检测。性腺和早期性腺发育。这些标记物通过免疫组织化学在对应于阶段(S)15至S40的C.livia的组织学制剂中揭示。通过免疫检测绿脓杆菌种系中的N-钙粘蛋白、Oct4、GnRHR和3βHSD,可以在转移到生殖嵴及其定植过程中,在内脏中胚层水平上鉴定卵黄囊膜中的PGCs。以同样的方式,有可能在性腺发育早期表征和定位PGCs。这项对C.livia的研究表明,Oct4、N-钙粘蛋白、GNRHR和3βHSD在PGCs中具有免疫检测作用,可作为细胞迁移出血管、在生殖嵴定植和早期性腺发育过程中的潜在种系细胞标志物。此外,这项研究可以作为一个新的通用模型来了解蝙蝠物种的早期性腺发育。这篇文章受版权保护。保留所有权利。
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Early gonadogenesis in Columba livia (birds: Columbiformes): Migration, colonization, and differentiation of germ cells

In birds, primordial germ cells (PGCs) use the bloodstream to travel to a specific region, where the cells undergo extravasation followed by intrastromal migration to the gonadal crest for further colonization. Currently, DDX4, SSEA1, and Oct4 are used to identify germ cells. Other germline cell-associated molecules are N-cadherin, GnRHR, and 3β hydroxysteroid dehydrogenase (3βHSD), which have been used in mice and birds during gonadal development; however, its role in early gonadogenesis in birds is poorly described. This study aimed to evaluate the differential immunodetection of N-cadherin binding molecule, Oct4 pluripotency protein, GnRHR receptor, and 3βHSD enzyme in Columba livia embryos during migration colonization of PGCs in the gonadal crest and early gonadogenesis. These markers were revealed by immunohistochemistry in histological preparations of C. livia corresponding to stages (S)15 to S40. Immunodetection of N-cadherin, Oct4, GnRHR, and 3βHSD in the germ line of C. livia allowed the identification of PGCs in the yolk sac membrane at the level of the splanchnic mesoderm during migration to the genital crest and its colonization. In the same way, it was possible to characterize and localize PGCs during early gonadogenesis. This study in C. livia demonstrates that Oct4, N-cadherin, GNRHR, and 3βHSD are immunodetected in PGCs and could be used as potential germline cell markers during cell migration out of blood vessels, colonization in the genital crest, and early gonadogenesis. Furthermore, this study could be used as a novel general model to understand the early gonadogenesis in altricial species.

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来源期刊
Development Growth & Differentiation
Development Growth & Differentiation 生物-发育生物学
CiteScore
4.60
自引率
4.00%
发文量
62
审稿时长
6 months
期刊介绍: Development Growth & Differentiation (DGD) publishes three types of articles: original, resource, and review papers. Original papers are on any subjects having a context in development, growth, and differentiation processes in animals, plants, and microorganisms, dealing with molecular, genetic, cellular and organismal phenomena including metamorphosis and regeneration, while using experimental, theoretical, and bioinformatic approaches. Papers on other related fields are also welcome, such as stem cell biology, genomics, neuroscience, Evodevo, Ecodevo, and medical science as well as related methodology (new or revised techniques) and bioresources. Resource papers describe a dataset, such as whole genome sequences and expressed sequence tags (ESTs), with some biological insights, which should be valuable for studying the subjects as mentioned above. Submission of review papers is also encouraged, especially those providing a new scope based on the authors’ own study, or a summarization of their study series.
期刊最新文献
Quantitative in toto live imaging analysis of apical nuclear migration in the mouse telencephalic neuroepithelium. Labeling and sorting of avian primordial germ cells utilizing Lycopersicon Esculentum lectin. Transition from fetal to postnatal state in the heart: Crosstalk between metabolism and regeneration. Issue Information Mitochondrial DNA replication is essential for neurogenesis but not gliogenesis in fetal neural stem cells
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